A Preliminary Experimental Study of Mitigating Coastal Erosion by Microbially Induced Carbonate Precipitation (MICP) Using Laboratory Microcosm
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Publisher
Springer Nature Singapore
Link
https://link.springer.com/content/pdf/10.1007/978-981-97-3393-4_17
Reference5 articles.
1. Burbank M, Weaver T, Lewis R, Williams T, Williams B, Crawford R (2013) Geotechnical tests of sands following bioinduced calcite precipitation catalyzed by indigenous bacteria. J Geotechn Geoenviron Eng 139(6):928–936
2. Sahib AA, Robinson RG (2020) Drying and Atterberg limits of Cochin marine clay. Int J Geotechn Eng
3. Zhao Q, Li L, Li C, Li M, Amini F, Zhang H (2014) Factors affecting improvement of engineering properties of MICP-treated soil catalyzed by bacteria and urease. J Mater Civ Eng 26:04014094. Zhao Q, Li L, Li C, Li M, Amini F, Zhang H (2014) Factors affecting improvement of engineering properties of MICP-treated soil catalyzed by bacteria and urease. J Mater Civ Eng 26:04014094. https://doi.org/10.1061/(ASCE)MT.1943-5533.00010
4. Salifu E, MacLachlan E, Iyer KR, Knapp CW, Tarantino A (2015) Application of microbially induced calcite precipitation in erosion mitigation and stabilisation of sandy soil foreshore slopes: a preliminary investigation. Eng Geol 201:96–105. Shahin MA, Jamieson K, Cheng L (2020) Microbial-induced carbonate precipitation for coastal erosion mitigation of sandy slopes. Géotechn Lett 10:1–5
5. Kannan K, Bindu J, Vinod P (2020) Engineering behaviour of MICP treated marine clays. Marine Georesour Geotechnol 3:40
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